These tools will no longer be maintained as of December 31, 2024. Archived website can be found here. PubMed4Hh GitHub repository can be found here. Contact NLM Customer Service if you have questions.
350 related articles for article (PubMed ID: 19792707)
1. Ultrahigh-energy photons as a probe of nearby transient ultrahigh-energy cosmic-ray sources and possible Lorentz-invariance violation. Murase K Phys Rev Lett; 2009 Aug; 103(8):081102. PubMed ID: 19792707 [TBL] [Abstract][Full Text] [Related]
2. Identifying nearby accelerators of ultrahigh energy cosmic rays using ultrahigh energy (and very high energy) photons. Taylor AM; Hinton JA; Blasi P; Ave M Phys Rev Lett; 2009 Jul; 103(5):051102. PubMed ID: 19792478 [TBL] [Abstract][Full Text] [Related]
3. Constraints on Ultrahigh-Energy Cosmic-Ray Sources from a Search for Neutrinos above 10 PeV with IceCube. Aartsen MG; Abraham K; Ackermann M; Adams J; Aguilar JA; Ahlers M; Ahrens M; Altmann D; Andeen K; Anderson T; Ansseau I; Anton G; Archinger M; Argüelles C; Auffenberg J; Axani S; Bai X; Barwick SW; Baum V; Bay R; Beatty JJ; Becker Tjus J; Becker KH; BenZvi S; Berghaus P; Berley D; Bernardini E; Bernhard A; Besson DZ; Binder G; Bindig D; Bissok M; Blaufuss E; Blot S; Bohm C; Börner M; Bos F; Bose D; Böser S; Botner O; Braun J; Brayeur L; Bretz HP; Burgman A; Carver T; Casier M; Cheung E; Chirkin D; Christov A; Clark K; Classen L; Coenders S; Collin GH; Conrad JM; Cowen DF; Cross R; Day M; de André JP; De Clercq C; Del Pino Rosendo E; Dembinski H; De Ridder S; Desiati P; de Vries KD; de Wasseige G; de With M; DeYoung T; Díaz-Vélez JC; di Lorenzo V; Dujmovic H; Dumm JP; Dunkman M; Eberhardt B; Ehrhardt T; Eichmann B; Eller P; Euler S; Evenson PA; Fahey S; Fazely AR; Feintzeig J; Felde J; Filimonov K; Finley C; Flis S; Fösig CC; Franckowiak A; Friedman E; Fuchs T; Gaisser TK; Gallagher J; Gerhardt L; Ghorbani K; Giang W; Gladstone L; Glagla M; Glüsenkamp T; Goldschmidt A; Golup G; Gonzalez JG; Grant D; Griffith Z; Haack C; Haj Ismail A; Hallgren A; Halzen F; Hansen E; Hansmann B; Hansmann T; Hanson K; Hebecker D; Heereman D; Helbing K; Hellauer R; Hickford S; Hignight J; Hill GC; Hoffman KD; Hoffmann R; Holzapfel K; Hoshina K; Huang F; Huber M; Hultqvist K; In S; Ishihara A; Jacobi E; Japaridze GS; Jeong M; Jero K; Jones BJ; Jurkovic M; Kappes A; Karg T; Karle A; Katz U; Kauer M; Keivani A; Kelley JL; Kemp J; Kheirandish A; Kim M; Kintscher T; Kiryluk J; Kittler T; Klein SR; Kohnen G; Koirala R; Kolanoski H; Konietz R; Köpke L; Kopper C; Kopper S; Koskinen DJ; Kowalski M; Krings K; Kroll M; Krückl G; Krüger C; Kunnen J; Kunwar S; Kurahashi N; Kuwabara T; Labare M; Lanfranchi JL; Larson MJ; Lauber F; Lennarz D; Lesiak-Bzdak M; Leuermann M; Leuner J; Lu L; Lünemann J; Madsen J; Maggi G; Mahn KB; Mancina S; Mandelartz M; Maruyama R; Mase K; Maunu R; McNally F; Meagher K; Medici M; Meier M; Meli A; Menne T; Merino G; Meures T; Miarecki S; Mohrmann L; Montaruli T; Moulai M; Nahnhauer R; Naumann U; Neer G; Niederhausen H; Nowicki SC; Nygren DR; Obertacke Pollmann A; Olivas A; O'Murchadha A; Palczewski T; Pandya H; Pankova DV; Penek Ö; Pepper JA; Pérez de Los Heros C; Pieloth D; Pinat E; Price PB; Przybylski GT; Quinnan M; Raab C; Rädel L; Rameez M; Rawlins K; Reimann R; Relethford B; Relich M; Resconi E; Rhode W; Richman M; Riedel B; Robertson S; Rongen M; Rott C; Ruhe T; Ryckbosch D; Rysewyk D; Sabbatini L; Sanchez Herrera SE; Sandrock A; Sandroos J; Sarkar S; Satalecka K; Schimp M; Schlunder P; Schmidt T; Schoenen S; Schöneberg S; Schumacher L; Seckel D; Seunarine S; Soldin D; Song M; Spiczak GM; Spiering C; Stahlberg M; Stanev T; Stasik A; Steuer A; Stezelberger T; Stokstad RG; Stößl A; Ström R; Strotjohann NL; Sullivan GW; Sutherland M; Taavola H; Taboada I; Tatar J; Tenholt F; Ter-Antonyan S; Terliuk A; Tešić G; Tilav S; Toale PA; Tobin MN; Toscano S; Tosi D; Tselengidou M; Turcati A; Unger E; Usner M; Vandenbroucke J; van Eijndhoven N; Vanheule S; van Rossem M; van Santen J; Veenkamp J; Vehring M; Voge M; Vraeghe M; Walck C; Wallace A; Wallraff M; Wandkowsky N; Weaver C; Weiss MJ; Wendt C; Westerhoff S; Whelan BJ; Wickmann S; Wiebe K; Wiebusch CH; Wille L; Williams DR; Wills L; Wolf M; Wood TR; Woolsey E; Woschnagg K; Xu DL; Xu XW; Xu Y; Yanez JP; Yodh G; Yoshida S; Zoll M; Phys Rev Lett; 2016 Dec; 117(24):241101. PubMed ID: 28009216 [TBL] [Abstract][Full Text] [Related]
4. Detection and imaging of atmospheric radio flashes from cosmic ray air showers. Falcke H; Apel WD; Badea AF; Bähren L; Bekk K; Bercuci A; Bertaina M; Biermann PL; Blümer J; Bozdog H; Brancus IM; Buitink S; Brüggemann M; Buchholz P; Butcher H; Chiavassa A; Daumiller K; de Bruyn AG; de Vos CM; Di Pierro F; Doll P; Engel R; Gemmeke H; Ghia PL; Glasstetter R; Grupen C; Haungs A; Heck D; Hörandel JR; Horneffer A; Huege T; Kampert KH; Kant GW; Klein U; Kolotaev Y; Koopman Y; Krömer O; Kuijpers J; Lafebre S; Maier G; Mathes HJ; Mayer HJ; Milke J; Mitrica B; Morello C; Navarra G; Nehls S; Nigl A; Obenland R; Oehlschläger J; Ostapchenko S; Over S; Pepping HJ; Petcu M; Petrovic J; Plewnia S; Rebel H; Risse A; Roth M; Schieler H; Schoonderbeek G; Sima O; Stümpert M; Toma G; Trinchero GC; Ulrich H; Valchierotti S; van Buren J; van Cappellen W; Walkowiak W; Weindl A; Wijnholds S; Wochele J; Zabierowski J; Zensus JA; Zimmermann D Nature; 2005 May; 435(7040):313-6. PubMed ID: 15902250 [TBL] [Abstract][Full Text] [Related]
5. Role of galactic sources and magnetic fields in forming the observed energy-dependent composition of ultrahigh-energy cosmic rays. Calvez A; Kusenko A; Nagataki S Phys Rev Lett; 2010 Aug; 105(9):091101. PubMed ID: 20868150 [TBL] [Abstract][Full Text] [Related]
6. Constraint on electromagnetic acceleration of highest energy cosmic rays. Medvedev MV Phys Rev E Stat Nonlin Soft Matter Phys; 2003 Apr; 67(4 Pt 2):045401. PubMed ID: 12786427 [TBL] [Abstract][Full Text] [Related]
7. PeV neutrinos from intergalactic interactions of cosmic rays emitted by active galactic nuclei. Kalashev OE; Kusenko A; Essey W Phys Rev Lett; 2013 Jul; 111(4):041103. PubMed ID: 23931348 [TBL] [Abstract][Full Text] [Related]
8. Hidden Cosmic-Ray Accelerators as an Origin of TeV-PeV Cosmic Neutrinos. Murase K; Guetta D; Ahlers M Phys Rev Lett; 2016 Feb; 116(7):071101. PubMed ID: 26943524 [TBL] [Abstract][Full Text] [Related]
9. Testing the Equivalence Principle and Lorentz Invariance with PeV Neutrinos from Blazar Flares. Wang ZY; Liu RY; Wang XY Phys Rev Lett; 2016 Apr; 116(15):151101. PubMed ID: 27127950 [TBL] [Abstract][Full Text] [Related]
10. Exploring Lorentz Invariance Violation from Ultrahigh-Energy γ Rays Observed by LHAASO. Cao Z; Aharonian F; An Q; Axikegu ; Bai LX; Bai YX; Bao YW; Bastieri D; Bi XJ; Bi YJ; Cai H; Cai JT; Cao Z; Chang J; Chang JF; Chen BM; Chen ES; Chen J; Chen L; Chen L; Chen L; Chen MJ; Chen ML; Chen QH; Chen SH; Chen SZ; Chen TL; Chen XL; Chen Y; Cheng N; Cheng YD; Cui SW; Cui XH; Cui YD; Piazzoli BD; Dai BZ; Dai HL; Dai ZG; Danzengluobu ; Della Volpe D; Dong XJ; Duan KK; Fan JH; Fan YZ; Fan ZX; Fang J; Fang K; Feng CF; Feng L; Feng SH; Feng YL; Gao B; Gao CD; Gao LQ; Gao Q; Gao W; Ge MM; Geng LS; Gong GH; Gou QB; Gu MH; Guo FL; Guo JG; Guo XL; Guo YQ; Guo YY; Han YA; He HH; He HN; He JC; He SL; He XB; He Y; Heller M; Hor YK; Hou C; Hou X; Hu HB; Hu S; Hu SC; Hu XJ; Huang DH; Huang QL; Huang WH; Huang XT; Huang XY; Huang ZC; Ji F; Ji XL; Jia HY; Jiang K; Jiang ZJ; Jin C; Ke T; Kuleshov D; Levochkin K; Li BB; Li C; Li C; Li F; Li HB; Li HC; Li HY; Li J; Li J; Li K; Li WL; Li XR; Li X; Li X; Li Y; Li YZ; Li Z; Li Z; Liang EW; Liang YF; Lin SJ; Liu B; Liu C; Liu D; Liu H; Liu HD; Liu J; Liu JL; Liu JS; Liu JY; Liu MY; Liu RY; Liu SM; Liu W; Liu Y; Liu YN; Liu ZX; Long WJ; Lu R; Lv HK; Ma BQ; Ma LL; Ma XH; Mao JR; Masood A; Min Z; Mitthumsiri W; Montaruli T; Nan YC; Pang BY; Pattarakijwanich P; Pei ZY; Qi MY; Qi YQ; Qiao BQ; Qin JJ; Ruffolo D; Rulev V; Sáiz A; Shao L; Shchegolev O; Sheng XD; Shi JR; Song HC; Stenkin YV; Stepanov V; Su Y; Sun QN; Sun XN; Sun ZB; Tam PHT; Tang ZB; Tian WW; Wang BD; Wang C; Wang H; Wang HG; Wang JC; Wang JS; Wang LP; Wang LY; Wang RN; Wang W; Wang W; Wang XG; Wang XJ; Wang XY; Wang Y; Wang YD; Wang YJ; Wang YP; Wang ZH; Wang ZX; Wang Z; Wang Z; Wei DM; Wei JJ; Wei YJ; Wen T; Wu CY; Wu HR; Wu S; Wu WX; Wu XF; Xi SQ; Xia J; Xia JJ; Xiang GM; Xiao DX; Xiao G; Xiao HB; Xin GG; Xin YL; Xing Y; Xu DL; Xu RX; Xue L; Yan DH; Yan JZ; Yang CW; Yang FF; Yang JY; Yang LL; Yang MJ; Yang RZ; Yang SB; Yao YH; Yao ZG; Ye YM; Yin LQ; Yin N; You XH; You ZY; Yu YH; Yuan Q; Zeng HD; Zeng TX; Zeng W; Zeng ZK; Zha M; Zhai XX; Zhang BB; Zhang HM; Zhang HY; Zhang JL; Zhang JW; Zhang LX; Zhang L; Zhang L; Zhang PF; Zhang PP; Zhang R; Zhang SR; Zhang SS; Zhang X; Zhang XP; Zhang YF; Zhang YL; Zhang Y; Zhang Y; Zhao B; Zhao J; Zhao L; Zhao LZ; Zhao SP; Zheng F; Zheng Y; Zhou B; Zhou H; Zhou JN; Zhou P; Zhou R; Zhou XX; Zhu CG; Zhu FR; Zhu H; Zhu KJ; Zuo X; Phys Rev Lett; 2022 Feb; 128(5):051102. PubMed ID: 35179919 [TBL] [Abstract][Full Text] [Related]
11. Neutrinos: the key to ultrahigh energy cosmic rays. Seckel D; Stanev T Phys Rev Lett; 2005 Sep; 95(14):141101. PubMed ID: 16241639 [TBL] [Abstract][Full Text] [Related]
12. Active Galactic Nuclei Jets as the Origin of Ultrahigh-Energy Cosmic Rays and Perspectives for the Detection of Astrophysical Source Neutrinos at EeV Energies. Rodrigues X; Heinze J; Palladino A; van Vliet A; Winter W Phys Rev Lett; 2021 May; 126(19):191101. PubMed ID: 34047601 [TBL] [Abstract][Full Text] [Related]
13. Ultrahigh-energy photons as probes of Lorentz symmetry violations in stringy space-time foam models. Maccione L; Liberati S; Sigl G Phys Rev Lett; 2010 Jul; 105(2):021101. PubMed ID: 20867696 [TBL] [Abstract][Full Text] [Related]
14. AMANDA observations constrain the ultrahigh energy neutrino flux. Halzen F; Hooper D Phys Rev Lett; 2006 Aug; 97(7):071101. PubMed ID: 17026217 [TBL] [Abstract][Full Text] [Related]
15. Pointlike gamma ray sources as signatures of distant accelerators of ultrahigh energy cosmic rays. Gabici S; Aharonian FA Phys Rev Lett; 2005 Dec; 95(25):251102. PubMed ID: 16384444 [TBL] [Abstract][Full Text] [Related]
16. Implications of the penetration depth of ultrahigh-energy cosmic rays on physics at 100 TeV. Shaham N; Piran T Phys Rev Lett; 2013 Jan; 110(2):021101. PubMed ID: 23383884 [TBL] [Abstract][Full Text] [Related]
17. Neutrinos produced by ultrahigh-energy photons at high redshift. Kusenko A; Postma M Phys Rev Lett; 2001 Feb; 86(8):1430-3. PubMed ID: 11290160 [TBL] [Abstract][Full Text] [Related]
18. Tomographic Constraints on High-Energy Neutrinos of Hadronuclear Origin. Ando S; Tamborra I; Zandanel F Phys Rev Lett; 2015 Nov; 115(22):221101. PubMed ID: 26650287 [TBL] [Abstract][Full Text] [Related]
19. Violation of the Greisen-Zatsepin-Kuzmin cutoff: a tempest in a (magnetic) Teapot? Why cosmic ray energies above 10(20) eV may not require new physics. Farrar GR; Piran T Phys Rev Lett; 2000 Apr; 84(16):3527-30. PubMed ID: 11019137 [TBL] [Abstract][Full Text] [Related]